Christensen Simon, Groth Leonard, Leiva-Eriksson Nélida, Nyblom Maria, Bülow Leif
Pure and Applied Biochemistry, Department of Chemistry, Lund University, 22100 Lund, Sweden.
Biotechnology, Department of Chemistry, Lund University, 22100 Lund, Sweden.
Antioxidants (Basel). 2022 Aug 20;11(8):1615. doi: 10.3390/antiox11081615.
Phytoglobins (Pgbs) are plant-originating heme proteins of the globin superfamily with varying degrees of hexacoordination. Pgbs have a conserved cysteine residue, the role of which is poorly understood. In this paper, we investigated the functional and structural role of cysteine in BvPgb1.2, a Class 1 Pgb from sugar beet (), by constructing an alanine-substituted mutant (Cys86Ala). The substitution had little impact on structure, dimerization, and heme loss as determined by X-ray crystallography, size-exclusion chromatography, and an apomyoglobin-based heme-loss assay, respectively. The substitution significantly affected other important biochemical properties. The autoxidation rate increased 16.7- and 14.4-fold for the mutant versus the native protein at 25 °C and 37 °C, respectively. Thermal stability similarly increased for the mutant by ~2.5 °C as measured by nano-differential scanning fluorimetry. Monitoring peroxidase activity over 7 days showed a 60% activity decrease in the native protein, from 33.7 to 20.2 U/mg protein. When comparing the two proteins, the mutant displayed a remarkable enzymatic stability as activity remained relatively constant throughout, albeit at a lower level, ~12 U/mg protein. This suggests that cysteine plays an important role in BvPgb1.2 function and stability, despite having seemingly little effect on its tertiary and quaternary structure.
植物珠蛋白(Pgbs)是球蛋白超家族中源自植物的血红素蛋白,具有不同程度的六配位。Pgbs有一个保守的半胱氨酸残基,其作用尚不清楚。在本文中,我们通过构建丙氨酸取代突变体(Cys86Ala),研究了甜菜1类Pgbs BvPgb1.2中半胱氨酸的功能和结构作用。分别通过X射线晶体学、尺寸排阻色谱和基于脱辅基肌红蛋白的血红素损失测定法确定,该取代对结构、二聚化和血红素损失影响很小。该取代显著影响了其他重要的生化特性。在25℃和37℃下,突变体的自氧化速率分别比天然蛋白增加了16.7倍和14.4倍。通过纳米差示扫描荧光法测定,突变体的热稳定性同样提高了约2.5℃。在7天内监测过氧化物酶活性表明,天然蛋白的活性从33.7 U/mg蛋白下降到20.2 U/mg蛋白,降幅为60%。比较这两种蛋白时,突变体表现出显著的酶稳定性,因为其活性在整个过程中保持相对恒定,尽管水平较低,约为12 U/mg蛋白。这表明半胱氨酸在BvPgb1.2的功能和稳定性中起着重要作用,尽管它对其三级和四级结构似乎影响很小。